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991.
Michael C. Fu Rafael A. Buerba William D. Long III Daniel J. Blizzard Andrew W. Lischuk Andrew H. Haims Jonathan N. Grauer 《The spine journal》2014,14(10):2442-2448
Background context
Magnetic resonance imaging (MRI) is frequently used in the evaluation of degenerative conditions in the lumbar spine. The relative interrater and intrarater agreements of MRI findings across different pathologic conditions are underexplored, as most studies are focused on specific findings.Purpose
The purpose of this study was to characterize the interrater and intrarater agreements of MRI findings used to assess the degenerative lumbar spine.Study design
A retrospective diagnostic study at a large academic medical center was undertaken with a panel of orthopedic surgeons and musculoskeletal radiologists to assess lumbar MRIs using standardized criteria.Patient sample
Seventy-five subjects who underwent routine lumbar spine MRI at our institution were included.Outcome measures
Each MRI study was assessed for 10 lumbar degenerative findings using standardized criteria. Lumbar vertebral levels were assessed independently, where applicable, for a total of 52 data points collected per study.Methods
T2-weighted axial and sagittal MRI sequences were presented in random order to the four reviewers (two orthopedic spine surgeons and two musculoskeletal radiologists) independently to determine interrater agreement. The first 10 studies were reevaluated at the end to determine intrarater agreement. Images were assessed using standardized and pilot-tested criteria to assess disc degeneration, stenosis, and other degenerative changes. Interrater and intrarater absolute percent agreements were calculated. To highlight the most clinically important MRI disagreements, a modified agreement analysis was also performed (in which disagreements between the lowest two severity grades for applicable conditions were ignored). Fleiss kappa coefficients for interrater agreement were determined.Results
The overall absolute and modified interrater agreements were 76.9% and 93.5%, respectively. The absolute and modified intrarater agreements were 81.3% and 92.7%, respectively. Average Fleiss kappa coefficient was 0.431, suggesting moderate overall agreement. However, when stratified by condition, absolute interrater agreement ranged from 65.1% to 92.0%. Disc hydration, disc space height, and bone marrow changes exhibited the lowest absolute interrater agreements. The absolute intrarater agreement had a narrower range, from 74.5% to 91.5%. Fleiss kappa coefficients ranged from fair-to-substantial agreement (0.282–0.618).Conclusions
Even in a study using standardized evaluation criteria, there was significant variability in the interrater and intrarater agreements of MRI in assessing different degenerative conditions of the lumbar spine. Clinicians should be aware of the condition-specific diagnostic limitations of MRI interpretation. 相似文献992.
993.
994.
Qinghua Dong Sherven Sharma Hai Liu Long Chen Benxing Gu Xiaonan Sun Guanyu Wang 《Toxicology letters》2014
Tumors treated with fractionated doses of ionizing radiation (IR) often acquire radioresistance. Although histone deacetylase inhibitors (HDIs) have been demonstrated to sensitize intrinsic radioresistant cancer cell lines to IR, little is known on the impact of HDIs on the effects of IR in acquired radioresistant cancer cells. This study evaluates the mechanisms by which HDIs sensitize acquired radioresistant esophageal squamous cell carcinoma cells to IR. The HDIs trichostatin A and sodium butyrate were tested for their ability to sensitize acquired radioresistant KYSE-150R and radiosensitive KYSE-150 parental cells to IR. Although the HDIs induced similar levels of cytotoxicity in the KYSE-150 and the KYSE-150R cells, HDIs increased the: (i) radiosensitivity, (ii) IR-induced ROS generation, and (iii) IR-induced G2/M arrest and apoptosis of KYSE-150R cells compared with those of KYSE-150 cells. These changes were accompanied by increased p21expression and decreased mitochondrial membrane potential. When combined with IR, HDIs inhibited Bmi-1 expression in KYSE-150R cells and their ability to repair DNA damage. The results demonstrate the potential utility of HDIs in augmenting the efficacy of fractionated radiotherapy. 相似文献
995.
Vaishnav Aditi S. Alderwish Edris Coleman Kristie M. Saleh Moussa Makker Parth Bhasin Kabir Bernstein Neil E. Skipitaris Nicholas T. Mountantonakis Stavros E. 《Journal of interventional cardiac electrophysiology》2021,61(2):293-302
Journal of Interventional Cardiac Electrophysiology - Effective pulmonary vein isolation (PVI) with cryoablation depends on adequate occlusion of pulmonary veins (PV) by the cryoballoon and is... 相似文献
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Michael Megaly MD MS Matthew Glogoza MD Iosif Xenogiannis MD Evangelia Vemmou MD Ilias Nikolakopoulos MD Laura Willson MD David J. Monyak MD Patsa Sullivan MD Larissa Stanberry PhD Paul Sorajja MD Ivan Chavez MD Michael Mooney MD Jay Traverse MD Yale Wang MD Santiago Garcia MD Anil Poulose MD Martin Nicholas Burke MD Emmanouil S. Brilakis MD PhD 《Catheterization and cardiovascular interventions》2021,97(1):32-38
999.
1000.
Seung Min Lee Nicholas Bond Connor Callaway Benjamin Clark Emily Farmer MacKensie Mallard Seung Soon Jang 《RSC advances》2018,8(66):37866
The structural variation of multicompartment micelles is investigated using a dissipative particle dynamics simulation method for nano-reactor application. It turns out that well-defined multicompartment micelles with channel structures can be generated through the self-assembly of triblock copolymers consisting of a hydrophilic (A), a lipophilic (B), and a fluorophobic (C) block arranged in a B–A–C sequence: The corona and core are formed by the hydrophilic A block and the fluorophilic C block, respectively while the channel between the aqueous phase and core is formed by the lipophilic B block and the core. By performing a set of simulations, it is confirmed that channel size can be controlled as a function of the block length ratios between blocks A and B. Furthermore, it is also confirmed that the reactants pass through such channels to reach the micelle core by analyzing the pair correlation functions. By monitoring the change of the number of reactants in the multicompartment micelle, it is revealed that the diffusion of reactants into the core is slowed down as the concentration gradient is decreased. This work provides mesoscopic insight for the formation of multicompartment micelles and transport of reactants for use in the design of micelles as nanoreactors.The structural variation of multicompartment micelles is investigated using a dissipative particle dynamics simulation method for nano-reactor application. 相似文献